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Two-Dimensional Probabilistic Infiltration Analysis in a Hillslope Using First-Order Moment Approach

机译:基于一阶矩法的山坡二维概率入渗分析

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A first-order moment analysis method is introduced to evaluate the pore-water pressure variability within a hillslope due to spatial variability in saturated hydraulic conductivity (K-s) during rainfall. The influences of the variance of the natural logarithm of K-s(ln K-s), spatial structure anisotropy of ln K-s, and normalized vertical infiltration flux (q) on the evaluations of the pore-water pressure uncertainty are investigated. Results indicate different responses of pressure head variability in the unsaturated region and the saturated region. In the unsaturated region, a larger variance of ln K-s, a higher spatial structure anisotropy, and a smaller q lead to a larger variability in pressure head, while in the saturated region, the variability in pressure head increases with the increase of variance of ln K-s, the decrease of spatial structure anisotropy, or the increase of q. These variables have great impacts on the range of fluctuation of the phreatic surface within the hillslope. The influences of these three variables on the variance of pressure head within the saturated region are greater than those within the unsaturated region, and the variance of ln K-s has the greatest impact. These results yield useful insight into the effects of heterogeneity on pressure head and uncertainty associated with predicted flow field.
机译:引入一阶矩分析方法来评估由于降雨过程中饱和导水率(K-s)的空间变化而引起的山坡孔隙水压力变化。研究了K-s(ln K-s)的自然对数方差,ln K-s的空间结构各向异性以及归一化垂直入渗通量(q)对孔隙水压力不确定性评估的影响。结果表明,在不饱和区和饱和区,压头变化的响应不同。在非饱和区,ln Ks的方差较大,空间结构各向异性较大,q较小,导致压头的变异性较大,而在饱和区,压头的变异性随ln方差的增加而增加Ks,空间结构各向异性的减小,或q的增大。这些变量对山坡上潜水面的波动范围有很大的影响。这三个变量对饱和区域内压头变化的影响大于不饱和区域内,而ln K-s的变化影响最大。这些结果有助于深入了解非均质性对压头的影响以及与预测流场相关的不确定性。

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  • 来源
    《Ground water》 |2019年第2期|226-237|共12页
  • 作者单位

    Wuchang Univ Technol, 16 Jiangxia Rd, Wuhan 430223, Hubei, Peoples R China;

    China Univ Geosci, Fac Engn, 388 Lumo Rd, Wuhan 430074, Hubei, Peoples R China;

    Univ Arizona, Dept Hydrol & Atmospher Sci, Tucson, AZ 85721 USA;

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